AMRVAC and Relativistic Hydrodynamic simulations for GRB afterglow phases
arXiv:astro-ph/0701434 · doi:10.1111/j.1365-2966.2007.11500.x
Abstract
We apply a novel adaptive mesh refinement code, AMRVAC, to numerically investigate the various evolutionary phases in the interaction of a relativistic shell with its surrounding cold Interstellar Medium (ISM). We do this for both 1D isotropic as well as full 2D jetlike fireball models. This is relevant for Gamma Ray Bursts, and we demonstrate that, thanks to the AMR strategy, we resolve the internal structure of the shocked shell-ISM matter, which will leave its imprint on the GRB afterglow. We determine the deceleration from an initial Lorentz factor up to the almost Newtonian phase of the flow. We present axisymmetric 2D shell evolutions, with the 2D extent characterized by their initial opening angle. In such jetlike GRB models, we discuss the differences with the 1D isotropic GRB equivalents. These are mainly due to thermally induced sideways expansions of both the shocked shell and shocked ISM regions. We found that the propagating 2D ultrarelativistic shell does not accrete all the surrounding medium located within its initial opening angle. Part of this ISM matter gets pushed away laterally and forms a wide bow-shock configuration with swirling flow patterns trailing the thin shell. The resulting shell deceleration is quite different from that found in isotropic GRB models. As long as the lateral shell expansion is merely due to ballistic spreading of the shell, isotropic and 2D models agree perfectly. As thermally induced expansions eventually lead to significantly higher lateral speeds, the 2D shell interacts with comparably more ISM matter and decelerates earlier than its isotropic counterpart.
12 pages, accepted in MNRAS, 12/01/2007
References in corpus (3)
Cited by in corpus (19)
- MPI-AMRVAC for Solar and Astrophysics
- Deceleration of arbitrarily magnetized GRB ejecta: the complete evolution
- Computing the dust distribution in the bowshock of a fast moving, evolved star
- On the existence of a reverse shock in magnetized GRB ejecta
- Extragalactic jets with helical magnetic fields: relativistic MHD simulations
- A multidimensional grid-adaptive relativistic magnetofluid code
- Multi-dimensional models of circumstellar shells around evolved massive stars
- Gamma-Ray Burst afterglow scaling coefficients for general density profile
- Thin shell morphology in the circumstellar medium of massive binaries
- No visible optical variability from a relativistic blast wave encountering a wind-termination shock
- Shocks in relativistic transverse stratified jets, a new paradigm for radio-loud AGN
- PION: Simulating bow shocks and circumstellar nebulae
- Simulations of gamma-ray burst afterglows with a relativistic kinetic code
- Flare echos from relaxation shocks in perturbed relativistic jets
- Special Relativistic Hydrodynamics with CRONOS
- An implicit numerical algorithm for solving the general relativistic hydrodynamical equations around accreting compact objects
- Late-time non-thermal emission from mildly relativistic tidal ejecta of compact objects merger
- An RMHD study of transition between prompt and afterglow GRB phases
- The non-thermal emission following GW170817 is consistent with a conical radially-stratified outflow with initial Lorentz factor